| Part Numbert | Mfg | Packt | D/C | Descriptiont | Qty | Company/Contact | |
| SK12-L | 1000 |
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| SK12-L | 1000 |
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| SK12-L | 09+ | 1000 |
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| SK12-L | 2500 |
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| SK12-L | 08+ | 1000 |
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| SK12-L | 06+ | new and original in | 1000 |
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| SK12-L | 1000 |
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| SK12-L | 1000 |
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| SK12-L | 1000 |
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| SK12-L | A/N | 1000 |
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| SK12-L | 2500 |
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SK12-L Datasheet ~ OPERATING DC SUPPLY VOLTAGE RANGE 5V T0 25V ~ SUPPLY OVERVOLTAGE PULSEUP T0 40V ~ VERY LOW STANDBY QUIESCENT CUR- RENT 100ccA ~ EIGHT BIT PARALLELSTRUCTURE WITH ME- MORY FEATURE ~ BIDIRECTIONALINPUTS-OUTPUTS ~ ccC COMPATIBLEINPUTLEVELSWITHTHRE- SHOLD HYSTERESIS ~ INTERNAL 4.5V REFERENCE DEFINING THE OUTPUT HIGH LEVELS ~ EIGHT HIGH CURRENT OUTPUTS FOR DC CURRENTS UP T0 350mA WITH ON RESI- STANCE LESS THAN 3 1 (typ. i,sl ) ~ OUTPUT SHORT CIRCUIT PROTECTION WITH TIME DELAY CHARACTERISTICS FOR DRIVING LAMPS ~ THERMAL OVERLOAD PROTECTION SK12-L Price Table 7 shows the efficiency of the LM2788-1.8 versus input voltage, with output currents of lOmA and 120mA. The base gain regions (GB) are separated and labeled. There is also a set of ideal efficiency gradients, EIDEAL(G=xx) , showing the ideal efficiency of a charge pumps with gains of l/2, 2/3, and 1. These curves were generated using the ideal efficiency equation presented above. SK12-L on stock
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